IP Library › Granted Patent US 11,087,149
Granted Patent B2
US 11,087,149 · App. 16/317,296 · Granted Aug 10, 2021

Object detection apparatus

Inventors: Taketo Harada (Nisshin, JP); Mitsuyasu Matsuura (Nisshin, JP); Yosuke Miyamoto (Kariya, JP)
Assignee: DENSO CORPORATION
G06K9/00805B60R21/00B60R21/34B60W30/095B60W40/04G06T7/20G08G1/16G06T2207/30261
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Quick Facts
Patent No.
US 11,087,149
App. No.
16/317,296
Granted
Aug 10, 2021
Kind
B2
Abstract

An ECU is applied to a vehicle system that is provided with lateral sensors which acquire distance information expressing a distance to an object that is located at a position on a lateral side of a vehicle. When distance information on the object is acquired by the lateral sensors, a judgement is made by the ECU as to whether or not the object is a predetermined moving object that moves relative to the vehicle. The ECU determines that the object is a target to be subjected to contact avoidance processing for avoiding contact with the object, based on a result of judging whether or not the object for which the distance information is acquired is a moving object.

Claims (34)

1. An object detection apparatus applied to a vehicle system which includes a lateral sensor that is provided to a side part of a vehicle and that transmits probe waves and receives reflected waves corresponding to the probe waves, and the lateral sensor acquires distance information expressing a distance to an object that is located at a position on a lateral side of the vehicle, based on the reflected waves, the object detection apparatus detecting the object based on the distance information acquired by the lateral sensor, the object detection apparatus comprising:

a moving object judgement section configured to judge, based on the distance information on the object acquired from the lateral sensor, whether the object is a moving object that is in movement relative to the vehicle; and

a target object determination section configured to determine whether the object is a target to be subjected to contact avoidance processing, which is executed for avoiding contact with the object, wherein

the target object determination section adjusts a condition that inhibits the object from being determined to be a target to be subjected to contact avoidance processing in response to the object being judged to be a predetermined type of moving object, and

the condition comprises a threshold that determines whether to store or delete the distance information as information history, in which contact avoidance processing is executed with respect to the object based on the information history.

2. The object detection apparatus according to claim 1 , wherein

in response to the object being judged to be a predetermined type of moving object and the object being in a state of approaching the vehicle, the target object determination section increases the threshold that determines whether to store the distance information as the information history.

3. The object detection apparatus according to claim 1 , wherein

in response to the object being judged to be a predetermined type of moving object and the object being in a state of moving away from the vehicle, the target object determination section decreases the threshold that determines whether to delete the distance information from the information history, which has already been stored.

4. The object detection apparatus according to claim 1 , wherein

the moving object judgement section judges whether the object is a moving object that passes by a lateral side of the vehicle, and

the target object determination section makes a determination that the object is a target object based on at least one of a movement direction and a movement speed of the object.

5. The object detection apparatus according to claim 1 , wherein

the moving object judgement section judges a manner in which the object passes by the lateral side of the vehicle, from among manners in which the object and the vehicle pass each other, the object overtakes the vehicle, and the object obliquely approaches the vehicle, and

the target object determination section determines the object to be a target based on the manner in which the object passes.

6. The object detection apparatus according to claim 1 , wherein

the object detection apparatus is applied to the vehicle provided with an imaging unit which captures an image of an area around the vehicle, and

the moving object judgement section judges whether the object is a moving object based on at least one of an image of an area located ahead of and in a traveling direction of the vehicle and an image of an area located on the lateral side of the vehicle, the images being captured by the imaging unit.

7. The object detection apparatus according to claim 1 , further comprising

an involvement judgement section configured to judge whether there is a probability of contact with the object due to involvement while the vehicle is turning, based on a travel speed of the vehicle and turning information, wherein

in response to judging that there is a probability of contact with the object due to the involvement, the target object determination section determines that the object is a target to be subjected to contact avoidance processing.

8. A method of avoiding contact between a vehicle and objects detected using a lateral sensor positioned on a lateral side of the vehicle, the lateral sensor configured to transmit probe waves and receive reflected waves corresponding to the probe waves, the lateral sensor configured to acquire distance information, based on the reflected waves, regarding a distance to an object that is located on the lateral side of the vehicle, the method comprising:

judging, based on the distance information on the object, whether the object is moving relative to the vehicle;

determining, whether the object is a target to be subjected to contact avoidance processing by the vehicle, which is executed to avoid contact with the object; and

adjusting a condition that inhibits the object from being determined to be a target to be subjected to contact avoidance processing in response to the object being judged to be a predetermined type of moving object, wherein

the condition comprises a threshold that determines whether to store or delete the distance information as information history, in which contract avoidance processing is executed with respect to the object based on the information history.

9. A system for avoiding contact between a vehicle and objects detected using a lateral sensor positioned on a lateral side of the vehicle, the lateral sensor configured to transmit probe waves and receive reflected waves corresponding to the probe waves, the lateral sensor configured to acquire distance information, based on the reflected waves, regarding a distance to an object that is located on the lateral side of the vehicle, the system comprising:

a central processor;

a non-transitory computer-readable storage medium; and

a set of computer-executable instructions stored on the non-transitory computer-readable storage medium that cause the central processor to implement:

judging, based on the distance information on the object, whether the object is moving relative to the vehicle;

determining, whether the object is a target to be subjected to contact avoidance processing by the vehicle, which is executed to avoid contact with the object; and

adjusting a condition that inhibits the object from being determined to be a target to be subjected to contact avoidance processing in response to the object being judged to be a predetermined type of moving object, wherein

the condition comprises a threshold that determines whether to store or delete the distance information as information history, in which contact avoidance processing is executed with respect to the object based on the information history.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 15, 2019
From: HARADA, TAKETO; MATSUURA, MITSUYASU; MIYAMOTO, YOSUKE
To: DENSO CORPORATION
Reel/Frame 048609/0150 →
Priority Claims (1)
JP JP2016-138599 · Jul 13, 2016 · national
Continuity (1)
Related Publication 20190228238A1 · Jul 25, 2019